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- W2330705512 abstract "Summary Using the six diploid species of Clarkiacsection Myxocarpa as exemplifying rapidly‐evolved, chromosomally‐based reproductive isolates, the temporal relationships of adaptive and reproductive divergence are examined. Unlike the more familiar pattern, in which adaptive divergence is greater at the interspecific level than at the intraspecific level, two of the species consist of subspecies which have adaptively diverged to a greater extent than has any Myxocarpa species from its putative progenitor. This indicates that the tempo and degree of adaptive change are relatively independent of the establishment of reproductive isolation, and indeed that the establishment of reproductive isolation by rapid chromosomal reorganization may not be coincidental with much change in adaptive level. Evidence bearing on the tempo of adaptive change prior to, during, and subsequent to the evolution of chromosomal isolates is examined. It is speculated that increased adaptation may frequently evolve prior to the establishment of chromosomal reorganization, because chromosomal isolates usually evolve from populations which have survived for a period of time in an especially stressful environment. Occasionally, less‐adapted chromosomal isolates, generated through genetic drift, may temporarily compete succesfully against a better‐adapted progenitor because of the competitive exclusion which occurs between intersterile populations which readily form F 1 hybrids. However, such isolates probably do not survive unless subsequent improvement in adaptation occurs." @default.
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- W2330705512 date "1972-11-01" @default.
- W2330705512 modified "2023-10-17" @default.
- W2330705512 title "TEMPO OF ADAPTIVE CHANGE DURING THE RAPID EVOLUTION OF CHROMOSOMAL ISOLATES" @default.
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- W2330705512 doi "https://doi.org/10.2307/1219155" @default.
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